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Enhancing Human-Likeness in Reinforcement Learning Agents via Hierarchical Macro Action Quantization

Usman Nizamani, M. Shaheer Luqman, Fawad Javed Fateh, Ali Shah Ali, Murad Popattia, M. Zeeshan Zia, Quoc-Huy Tran

arXiv:2605.30928Published May 29, 20260 citations
  • cs.RO
  • reinforcement learning
  • action

Abstract

Human-like agents are a long-standing goal of artificial intelligence. Despite strong performance, most reinforcement learning (RL) agents remain reward-driven and often exhibit behaviors that differ from humans, limiting interpretability and reliability. In this work, we introduce a novel human-like RL framework that predicts action sequences closely aligned with human behaviors while maximizing rewards. Specifically, we encode human demonstrations into macro actions using a hierarchical macro action quantization approach (termed HiMAQ) consisting of two successive levels of vector quantization. The lower quantization level maps input actions to fine-grained subaction clusters, while the higher quantization level aggregates these subaction clusters into action clusters. Extensive evaluations on the D4RL benchmarks show that our hierarchical approach outperforms the non-hierarchical baseline (MAQ), achieving better human-likeness scores while maintaining comparable or better success rates than previous RL agents. The improvements generalize across integrations with various RL algorithms, namely IQL, SAC, and RLPD.

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